Department of Molecular Science and Technology, Ajou University, Suwon, 443-749, South Korea.
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA, 02139, USA.
Adv Mater. 2017 Aug;29(30). doi: 10.1002/adma.201701748. Epub 2017 Jun 7.
Highly efficient nonlinear optical organic crystals are very attractive for various photonic applications including terahertz (THz) wave generation. Up to now, only two classes of ionic crystals based on either pyridinium or quinolinium with extremely large macroscopic optical nonlinearity have been developed. This study reports on a new class of organic nonlinear optical crystals introducing electron-accepting benzothiazolium, which exhibit higher electron-withdrawing strength than pyridinium and quinolinium in benchmark crystals. The benzothiazolium crystals consisting of new acentric core HMB (2-(4-hydroxy-3-methoxystyryl)-3-methylbenzo[d]thiazol-3-ium) exhibit extremely large macroscopic optical nonlinearity with optimal molecular ordering for maximizing the diagonal second-order nonlinearity. HMB-based single crystals prepared by simple cleaving method satisfy all required crystal characteristics for intense THz wave generation such as large crystal size with parallel surfaces, moderate thickness and high optical quality with large optical transparency range (580-1620 nm). Optical rectification of 35 fs pulses at the technologically very important wavelength of 800 nm in 0.26 mm thick HMB crystal leads to one order of magnitude higher THz wave generation efficiency with remarkably broader bandwidth compared to standard inorganic 0.5 mm thick ZnTe crystal. Therefore, newly developed HMB crystals introducing benzothiazolium with extremely large macroscopic optical nonlinearity are very promising materials for intense broadband THz wave generation and other nonlinear optical applications.
高效的非线性光学有机晶体对于各种光子应用非常有吸引力,包括太赫兹 (THz) 波产生。到目前为止,仅开发出了两类基于吡啶鎓或喹啉鎓的离子晶体,它们具有非常大的宏观光学非线性。本研究报告了一类新的有机非线性光学晶体,引入了具有比基准晶体中吡啶鎓和喹啉鎓更强的电子接受能力的苯并噻唑鎓。由新型非中心核 HMB(2-(4-羟基-3-甲氧基苯乙烯基)-3-甲基苯并[d]噻唑-3-鎓)组成的苯并噻唑鎓晶体具有非常大的宏观光学非线性,具有最佳的分子有序性,可最大程度地提高对角线二阶非线性。通过简单的劈开法制备的基于 HMB 的单晶满足强烈 THz 波产生所需的所有晶体特性,例如具有平行表面的大晶体尺寸、适度的厚度和高光学质量,具有大的光学透明度范围(580-1620nm)。在 0.26mm 厚的 HMB 晶体中,在技术上非常重要的 800nm 波长下进行 35fs 脉冲的光整流,导致 THz 波产生效率提高一个数量级,与标准无机 0.5mm 厚 ZnTe 晶体相比,带宽明显变宽。因此,新开发的具有非常大宏观光学非线性的 HMB 晶体是强烈宽带 THz 波产生和其他非线性光学应用的很有前途的材料。